Match each plant transport process or pathway on the left with its corresponding physiological mechanism or structural feature on the right.
- Long-distance upward xylem transport in tall treesTranspiration pull coupled with cohesive and adhesive forces
- Symplastic movement of water across root cortexCell-to-cell diffusion through microscopic plasmodesmata
- Phloem translocation of organic assimilatesHydrostatic pressure gradient generated by osmotic loading
- Development of positive root pressureActive solute accumulation in xylem vessels lowering water potential
Cevap
Long-distance upward xylem transport matches transpiration pull coupled with cohesive and adhesive forces; Symplastic movement of water matches cell-to-cell diffusion through microscopic plasmodesmata; Phloem translocation of organic assimilates matches hydrostatic pressure gradient generated by osmotic loading; Development of positive root pressure matches active solute accumulation in xylem vessels lowering water potential.
Each transport process pairs precisely with its core mechanism: xylem sap ascent requires transpiration pull and cohesion-tension; symplastic water transfer proceeds through living protoplasm via plasmodesmata; phloem assimilate transport operates under osmotic pressure-flow gradients; and root pressure develops through active mineral accumulation in root xylem.
Adım Adım Çözüm
Anahtar Kavram
Mechanisms and structural pathways governing water, mineral, and organic solute transport in vascular plants
Tahmini Süre:1m 30s